Parkinson's disease (PD) starts decades before symptoms appear, usually in the later decades of life, when age-related changes are occurring. To identify molecular changes early in the disease course and distinguish PD pathologies from aging, we generated Drosophila expressing alpha-synuclein (αSyn) in neurons and performed longitudinal bulk transcriptomics and proteomics on brains at six time points across the lifespan and compared the data to healthy control flies as well as human post-mortem brain datasets. We found that translational and energy metabolism pathways were downregulated in αSyn flies at the earliest timepoints; comparison with the aged control flies suggests that elevated αSyn accelerates changes associated with normal aging. Unexpectedly, single-cell analysis at a mid-disease stage revealed that neurons upregulate protein synthesis and nonsense-mediated decay, while glia drive their overall downregulation. Longitudinal multi-omics approaches in animal models can thus help elucidate the molecular cascades underlying neurodegeneration vs. aging and co-pathologies.
Longitudinal multi-omics in alpha-synuclein Drosophila model discriminates disease- from age-associated pathologies in Parkinson's disease.
α-突触核蛋白果蝇模型中的纵向多组学可区分帕金森病中的疾病相关病理和年龄相关病理
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作者:Moore Justin, Wu Timothy, Dhindsa Justin, El Fadel Omar, Le Anh, Perez Alma, Amoh Bismark, Tarkunde Akash, Zhu Katy F, Avalos Matthew, Dammer Eric B, Duong Duc M, Seyfried Nicholas T, Shulman Joshua M, Al-Ramahi Ismael, Botas Juan
| 期刊: | Npj Parkinsons Disease | 影响因子: | 8.200 |
| 时间: | 2025 | 起止号: | 2025 Mar 11; 11(1):46 |
| doi: | 10.1038/s41531-025-00899-z | 种属: | Drosophila |
| 研究方向: | 免疫/内分泌 | ||
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